Accurate weak lensing of standard candles. I. Flexible cosmological fits
arXiv:1304.7689 · doi:10.1103/PhysRevD.88.063004
Abstract
With the availability of thousands of type Ia supernovae in the near future the magnitude scatter induced by lensing will become a major issue as it affects parameter estimation. Current N-body simulations are too time consuming to be integrated in the likelihood analyses used for estimating the cosmological parameters. In this paper we show that in the weak lensing regime a statistical numerical approximation produces accurate results orders of magnitude faster. We write down simple fits to the second, third and fourth central moments of the lensing magnification probability distribution as a function of redshift, of the power spectrum normalization and of the present-day matter density. We also improve upon existing models of lensing variance and show that a shifted lognormal distribution fits well the numerical one. These fits can be easily employed in cosmological likelihood analyses. Moreover, our theoretical predictions make it possible to invert the problem and begin using supernovae lensing to constrain the cosmological parameters.
13 pages, 8 figures; matches version accepted for publication in PRD. The updated turboGL 2.0 code can be downloaded at http://www.turbogl.org
References in corpus (9)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Strong lensing optical depths in a \LambdaCDM universe
- Strong lensing optical depths in a LCDM universe II: the influence of the stellar mass in galaxies
- Extraordinary Magnification of the Ordinary Type Ia Supernova PS1-10afx
- Accurate Modeling of Weak Lensing with the sGL Method
- Ricci focusing, shearing, and the expansion rate in an almost homogeneous Universe
- Large-scale inhomogeneities may improve the cosmic concordance of supernovae
- Internal Robustness: systematic search for systematic bias in SN Ia data
Cited by in corpus (38)
- Cosmology and Fundamental Physics with the Euclid Satellite
- Simulations of the WFIRST Supernova Survey and Forecasts of Cosmological Constraints
- Effect of lensing magnification on the apparent distribution of black hole mergers
- Can redshift errors bias measurements of the Hubble Constant?
- Strong gravitational lensing of gravitational waves in Einstein Telescope
- The Effect of Weak Lensing on Distance Estimates from Supernovae
- Accurate Weak Lensing of Standard Candles. II. Measuring sigma8 with Supernovae
- Cosmology with Superluminous Supernovae
- Light propagation in inhomogeneous and anisotropic cosmologies
- Euclid: Superluminous supernovae in the Deep Survey
- Euclid: Forecast constraints on consistency tests of the CDM model
- First measurement of using supernova magnitudes only
- Constraining the halo mass function with observations
- Extensive search for bias in SNIa data
- Turning noise into signal: learning from the scatter in the Hubble diagram
- The theory of stochastic cosmological lensing
- Intrinsic uncertainty on the nature of dark energy
- Raytracing simulations of coupled dark energy models
- Measuring weak lensing correlations of Type Ia Supernovae
- Constraining the primordial power spectrum from SNIa lensing dispersion
- Constraints on small-scale cosmological fluctuations from SNe lensing dispersion
- Mapping the inhomogeneous Universe with Standard Sirens: Degeneracy between inhomogeneity and modified gravity theories
- Constraining the growth of perturbations with lensing of supernovae
- A robust cosmic standard ruler from the cross-correlations of galaxies and dark sirens
- Constraints on neutrino masses from the lensing dispersion of Type Ia supernovae
- Weak Lensing of Type Ia Supernovae from the Dark Energy Survey
- Lightcone Averaging and Precision Cosmology
- Forecasts of cosmological constraints from Type Ia supernovae including the weak-lensing convergence
- Lensing dispersion of supernova flux: a probe of nonlinear structure growth
- Euclid: Testing the Copernican principle with next-generation surveys
- Consistent use of Type Ia supernovae highly magnified by galaxy clusters to constrain the cosmological parameters
- The importance of the cosmic web and halo substructure for power spectra
- Weak lensing magnification of Type Ia Supernovae from the Pantheon sample
- Lensing dispersion of SNIa and small scales of the primordial power spectrum
- A Galaxy-Halo Model for Multiple Cosmological Tracers
- Forecasting Cosmological Constraints from the Weak Lensing Magnification of Type Ia Supernovae Measured by the Nancy Grace Roman Space Telescope
- Reconstructing the weak lensing magnification distribution of Type Ia supernovae
- Weak lensing of bright standard sirens: prospects for